DocumentCode
74757
Title
Automatic Morphological Measurement of the Quantum Dots Based on Marker-Controlled Watershed Algorithm
Author
Lulu Xu ; Huaxiang Lu
Author_Institution
Inst. of Semicond., Beijing, China
Volume
12
Issue
1
fYear
2013
fDate
Jan. 2013
Firstpage
51
Lastpage
56
Abstract
In the field of material growth, the quantum dot (QD) image analysis is a fundamental tool. The main challenge is that such study is used to be made by nonautomatic procedures which are time consuming and subjective. We aim to implement an algorithm of automatic analysis of the QDs images. In this frame, efficient QDs segmentation is prerequisite. In this paper, a fast and robust method for the visual segmentation of QDs image based on marker-controlled watershed transform is proposed. According to the foreground markers and the boundary of the coarse partition, the watershed transform is utilized to accurately separate QDs. A next process is then implemented to filter the possible attached substrates based on the area-height distribution of the extracted QDs. Finally, almost all the QDs can be accurately and robustly extracted and thus their properties can be measured. The experimental results show that the proposed approach gives a good tradeoff between the easy usability and efficiency, execution time, and segmentation quality.
Keywords
image segmentation; quantum dots; spatial variables measurement; QD image segmentation; area-height distribution; automatic analysis; automatic morphological measurement; coarse partition; execution time; filter; foreground markers; image analysis; marker-controlled watershed algorithm; quantum dots; segmentation quality; visual segmentation; watershed transform; Algorithm design and analysis; Gray-scale; Image reconstruction; Image segmentation; Quantum dots; Substrates; Transforms; Marker-controlled watershed; mathematical morphological; quantum dots (QDs) measurement; quantum dots (QDs) segmentation;
fLanguage
English
Journal_Title
Nanotechnology, IEEE Transactions on
Publisher
ieee
ISSN
1536-125X
Type
jour
DOI
10.1109/TNANO.2012.2229467
Filename
6359957
Link To Document